DocumentCode
3467612
Title
Concept of an inductive voltage adder for industrial applications
Author
Hartmann, W. ; Fleck, Robert ; Hergt, Martin
Author_Institution
Corp. Technol., Siemens AG, Erlangen, Germany
fYear
2013
fDate
16-21 June 2013
Firstpage
1
Lastpage
5
Abstract
The concept of an inductive voltage adder (IVA) which is suitable for industrial pulsed power applications is described. The pulse generator is designed to produce a double exponential waveform at voltage amplitudes of tens of kV to >100 kV, and current amplitudes of typically 10 kA into a matched load, at a pulse duration of typically 1 μs FWHM (full width at half maximum). In the IVA concept, the power is added through vector addition of electromagnetic fields rather than connecting a large number of semiconductor switches in series as in standard (Marx generator) technologies. This work comprises conceptual and simulation work. Fundamental components of the generator like the magnetic coupling (“transformer” section), magnetic isolation and the combining of power have been designed on the basis of 3D electromagnetic (EM) simulation work using CST Microwave Suite. Complementary experimental work based on these simulations comprises the verification of a single pulse module [1], single IVA stages incorporating several parallel pulse modules [2], and a multi-module, multi-stage IVA [3]. The IVA concept and results of these simulations are presented.
Keywords
adders; pulse generators; pulsed power supplies; transformers; 3D electromagnetic simulation; CST Microwave Suite; IVA; IVA stages; Marx generator; double exponential waveform; electromagnetic fields; inductive voltage adder; industrial applications; industrial pulsed power applications; magnetic coupling; magnetic isolation; matched load; multimodule multistage IVA; parallel pulse modules; pulse duration; pulse generator; pulse module; semiconductor switches; standard technologies; transformer section; voltage 100 kV; Adders; Electromagnetic fields; Generators; Inductance; Magnetic cores; Power transformer insulation; Power transmission lines;
fLanguage
English
Publisher
ieee
Conference_Titel
Pulsed Power Conference (PPC), 2013 19th IEEE
Conference_Location
San Francisco, CA
ISSN
2158-4915
Type
conf
DOI
10.1109/PPC.2013.6627522
Filename
6627522
Link To Document